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Abstract

Domain Structure and Magnetization Reversal Mechanism in Co/Pd Nanopatterned Multilayer †

Institute of Nuclear Physics PAN, ul. Radzikowskiego 152, 31-342 Kraków, Poland
*
Author to whom correspondence should be addressed.
Presented at the 37th International Symposium on Dynamical Properties of Solids (DyProSo 2019), Ferrara, Italy, 8–12 September 2019.
Proceedings 2019, 26(1), 32; https://doi.org/10.3390/proceedings2019026032
Published: 5 September 2019
(This article belongs to the Proceedings of The 37th International Symposium on Dynamical Properties of Solids)
Fabrication and modeling of patterned thin films with perpendicular magnetic anisotropy rise great interest due to their wide applications in magnetic storage, sensors and magnonic crystals. A good representative of such systems are well-ordered arrays of magnetic antidots and dots based on Co/Pd multilayers, where magnetic reversal mechanisms strongly depend on the array geometry [1,2]. We attempt to understand and reproduce the observed magnetic properties and domain structure appearing in the arrays by micromagnetic simulations performed using Mumax3 software [3]. In particular, changes in coercivity field, magnetic anisotropy constant and magnetic domain arrangement were studied and correlated with symmetry and size of nanostructures. The domain pattern simulations shed light on the details of formation the Néel domain walls, as compared to Bloch walls, depends on the distances between the antidots. The calculations show how edge effects, defects and inhomogeneity affect magnetization reversal and domain wall pinning mechanism, which helps to design similar patterned systems with the specific magnetic properties.

Acknowledgments

The numerical simulations were supported in part by the PL-Grid Infrastructure.

References

  1. Krupinski, M.; Mitin, D.; Zarzycki, A.; Szkudlarek, A.; Giersig, M.; Albrecht, M.; Marszałek, M. Magnetic transition from dot to antidot regime in large area Co/Pd nanopatterned arrays with perpendicular magnetization. Nanotechnology 2017, 28, 085302. [Google Scholar] [CrossRef] [PubMed]
  2. Banerjee, C.; Gruszecki, P.; Klos, J.W.; Hellwig, O.; Krawczyk, M.; Barman, A. Magnonic band structure in a Co/Pd stripe domain system investigated by Brillouin light scattering and micromagnetic simulations. Phys. Rev. B 2017, 96, 024421. [Google Scholar] [CrossRef]
  3. Vansteenkiste, A.; Leliaert, J.; Dvornik, M.; Helsen, M.; Garcia-Sanchez, F.; Van Waeyenberge, B. The Design and Verification of Mumax3. AIP Adv. 2014, 4, 107133. [Google Scholar] [CrossRef]

Share and Cite

MDPI and ACS Style

Sobieszczyk, P.; Krupiński, M.; Zieliński, P.; Marszałek, M. Domain Structure and Magnetization Reversal Mechanism in Co/Pd Nanopatterned Multilayer. Proceedings 2019, 26, 32. https://doi.org/10.3390/proceedings2019026032

AMA Style

Sobieszczyk P, Krupiński M, Zieliński P, Marszałek M. Domain Structure and Magnetization Reversal Mechanism in Co/Pd Nanopatterned Multilayer. Proceedings. 2019; 26(1):32. https://doi.org/10.3390/proceedings2019026032

Chicago/Turabian Style

Sobieszczyk, Paweł, Michał Krupiński, Piotr Zieliński, and Marta Marszałek. 2019. "Domain Structure and Magnetization Reversal Mechanism in Co/Pd Nanopatterned Multilayer" Proceedings 26, no. 1: 32. https://doi.org/10.3390/proceedings2019026032

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